清华大学教授,流体力学与传热传质学者
基本情况
1995年考入清华大学工程力学系,1999年和2004年分别获得清华大学工程力学系学士和博士学位。2004~2008年先后在美国约翰霍普金斯大学(Johns Hopkins University)和美国加州大学(University of California)作博士后,2008年获得美国能源部的J. Robert Oppenheimer Fellowship,并进入Los Alamos国家实验室(Earth and Environmental Sciences Division and Center for Non-Linear Studies)工作,任奥本海默学者(Oppenheimer Fellow)。2011年进入清华航天航空学院工作,任教授,同年入选国家首批青年,2012年入选清华大学基础研究人才计划,2013年获得吴仲华优秀青年学者奖。
教育背景
1999.7 清华大学工程力学系 学士学位
2004.7 清华大学航天航空学院 博士学位
工作履历
2004.10-2006.02 美国约翰霍普金斯大学机械工程系,博士后 (Postdoctoral Fellow)
2006.03-2008.05 美国加州大学戴维斯分校,博士后 (Research Associate)
2008.05-2011.05 美国洛斯阿洛莫斯国家实验室,奥本海默学者 (Oppenheimer Fellow)
2007.01-至今 美国约翰霍普金斯大学,访问科学家 (Visiting Scientist),兼职
2011.03-至今 清华大学航天航空学院工程力学系,教授
学术兼职
学会会员:ASME(2003至今),AIAA(2003至今),APS(2005至今),Fiber Society(2006至今),AGU(2009至今),Interpore(2013至今,lifetime member),中国工程热物理学会(2001至今),中国力学学会(2012至今)
学术服务:2006年至今担任7个国际SCI期刊的编委,多次作为会议的组织者或学术委员会成员组织国际会议或论坛,受邀作为美国NSF评审人、NASA外审专家委员会以及国资委评审委员会成员。担任编委的期刊包括: Energy期刊编委(Associate Editor)Elsevier出版社,SCIEnergies期刊编委(Editorial Board Member)SCIEnergy Science and Engineering期刊编委(Editorial Board Member)Wiley出版社,SCIJournal of Geophysical Research期刊编委(Associate Editor)AGU出版,SCIJournal of Porous Media期刊编委(Associate Editor)Belgellhouse出版社,SCITransport in Porous Media期刊编委(Editorial Board Member)Springer出版社,SCISpecial Topics & Reviews in Porous Media期刊编委(Associate Editor)Belgellhouse出版社,SCI
客座编辑:Special Issue of “Micro/Nanotransport Phenomena in Renewable Energy and Energy Efficiency”, with G. P. "Bud" Peterson (Gatech), G. Chen (MIT), and C. Li (NCSU) (2010)Special Issue of "Numerical Simulation of Fluid Flow and Heat Transfer Processes" (2013)Special Issue of "Heat and Mass transfer in Porous Media" with K. Vafai, N. Pan, and M. Quintard (2015)Special Issue of “Advanced theoretical and numerical approaches and applications to enhanced gas recovery” with J. Cai, B. Ghanbarian, P. Xu, and D. Elsworth (2016)研究领域1.微纳尺度流动及传热传质机理分析(流动、扩散及能量传递)2.微孔渗流的多物理化学输运(非常规油气、碳储存及水净化)3.多尺度模拟及应用(LBM, MC, MD, BD, PIC等)4.节能(能量传递、转化及存储机理及热力学优化)研究概况 一直从事微纳尺度流动与传热传质、多孔介质/材料构效关系、节能储能以及强化换热的理论及应用研究,在介观输运及多尺度模拟方面成果得到国内外同行关注;已在学术期刊及国际会议上发表论文100余篇,多次受邀撰写英文著作/章节,担任客座编辑出版英文专刊5本,多次受邀在高影响国际期刊(IF>10)撰写专题综述/评述论文,在7个国际学术期刊(SCI)担任副主编或编委。主持国家自然科学基金面上项目、国家重大专项子课题、国家人才支持项目、教育部博士点基金项目、多项国家实验室开放基金项目资助以及中石油和高校等协作项目,作为主要骨干参与自然基金委创新群体项目以及973节能项目;在美国工作期间,作为负责人主持美国能源部国家实验室研究发展(DOE-LDRD)项目和美国国家纺织中心(NTC)项目,作为主要骨干参与美国自然科学基金(NSF)项目和其他美国国家级的科研项目;博士期间参与中国国家自然科学基金重点项目和国家重点基础研究发展项目。奖励与荣誉2015/16 连续入选Elsevier高被引中国学者2015 清华大学优秀SRT奖2014 清华大学优秀班主任奖2013 “吴仲华”优秀青年学者奖2012 入选清华大学221人才计划2011 入选首批国家青年2011 入选清华大学骨干人才支持计划2010 美国洛斯阿洛莫斯国家实验室LAAP Publication Award2008 美国能源部J. Robert Oppenheimer Fellowship Award2006 全国优秀博士论文提名奖2004 清华大学优秀博士论文及优秀博士毕业生2004 清华大学航天海鹰杯学术新秀奖学术成果 发表学术期刊论文百余篇,其中SCI收录论文 100 余篇,论文SCI引用超过 3000 次,H因子 30 (数据来自Web of Science核心版, 截至到2016年5月);多次在高影响因子 (IF>10)的期刊(包括 Physics Reports、Materials Science and Engineering R: Reports和Progress in Materials Science等)发表专题综述。应主编邀请撰写英文书章节7章,合编英文专刊5本,中文教材及工具书5本。代表性论文综述文章 (selected 5)M. Wang, N. Pan. Predictions of Effective Physical Properties of Complex Multiphase Materials. Material Science and Engineering-R: Reports. 63(1): 1-30, 2008 [约稿当年IF=17.731]M. Wang. The Physical Chemistry of Materials: Energy and Environmental Applications. Materials Today. 13(3): 67, 2010 [约稿当年IF=12.929]X. Wang, B. Ding, G. Sun, M. Wang and J. Yu. Electro-spinning/netting. Progress in Materials Science.58: 1173-1243, 2013 [IF2013=25.87]S. Chen, M. Wang, and Z. Xia. Multiscale fluid mechanics and modeling. Procedia IUTAM. 10: 100-114, 2014 [Invited paper]Y. Guo, M. Wang. Phonon hydrodynamics and its applications in nanoscale heat transport. Physics Reports. 595: 1-44, 2015 [Impact Factor: 22.91 at the year]微纳电动流体(selected 5)A. Alizadeh, L. Zhang, and M. Wang*. Mixing enhancement of low Reynolds electro-osmotic flows in microchannels with temperature-patterned walls. Journal of Colloid and Interface Science, 431: 50-63, 2014J. Liu, M. Wang, S. Chen and M. Robbins*. Uncovering Molecular Mechanisms of Electrowetting and Saturation with Simulations. Physical Review Letters. 108: 216101, 2012M. Wang*, and A. Revil. Electrochemical charge of silica surfaces at high ionic strength in narrow channels. J. Colloid Interface Sci 343: 381-386, 2010M. Wang*, C. Chang, and R. Yang. Electroviscosity in nanofluidic channels. Journal of Chemical Physics 132: 024701, 2010M. Wang* and Q. Kang. Electrokinetic transport in microchannels with random roughness. Analytical Chemistry 81 (8), 2953-2961, 2009微纳多相复合材料热导率 (selected 5)C. Xie, J. Wang N. Pan, D. Wang and M. Wang*. Lattice Boltzmann modeling of thermal conduction in composite materials with thermal contact resistance. Communications in Computational Physics. 17: 1037-1055, 2015M. Wang*, X. Wang, J.K. Wang and N. Pan. Grain size effects on effective thermal conductivity of porous materials with internal thermal contact resistance. Journal Porous Media. 16(11): 1043-1048, 2013M. Wang*, N. Pan. Modeling and prediction of the Effective Thermal Conductivity of Random Open-cell Porous Foams. Int. J. Heat Mass Transfer. 51(5-6): 1325-1331, 2008M. Wang, J. He, J. Yu and N. Pan. Lattice Boltzmann modeling of the effective thermal conductivity for fibrous materials. Intentional Journal of Thermal Sciences 46(9): 848-855, 2007M. Wang*, J. Wang, N. Pan, and S. Chen. Mesoscopic Predictions of the Effective Thermal Conductivity of Microscale Random Porous Media. Physical Review E. 75: 036702, 2007微孔介质多物理化学输运(selected 5)L. Zhang, M. Wang*. Modeling of electrokinetic reactive transports using a coupled lattice Boltzmann method. Journal of Geophysical Research-Solid Earth. 120: 2877-2890, 2015S. Chen, X. He, V. Bertola and M. Wang*. Electrokinetic flow of non-Newtonian fluid in porous media. Journal of Colloid and Interface Science 436: 186-193, 2014M. Wang. Structure effects on electro-osmosis in microporous media. Journal of Heat Transfer-ASME 134: 051020, 2012M. Wang*, Q. Kang, H. Viswanathan and B. Robinson. Modeling of electro-osmosis of dilute electrolyte solutions in silica microporous media. J. Geophysical Research-Solid Earth 115: B10205, 2010M. Wang*, and S. Chen. Electroosmosis in homogeneously charged micro- and nanoscale random porous media. J. Colloid Interface Sci. 33(15): 264-273, 2007微纳气体流动与换热(selected 5)X. Shan and M. Wang*. On mechanism of chocked gas flow in microchannels. Physics Letter A 379: 2351-2356, 2015M. Wang, X. Lan and Z. Li*. Analysis of Gas flows in Micro- and Nanochannels. Int. J. Heat Mass Transfer. 51(13-14): 3630-3641, 2008M. Wang* Z. Li. An Enskog based Monte Carlo method for high Knudsen number non-ideal gas flows. Computer & Fluids. 36(8): 1291-1297, 2007M. Wang, Z. Li*. Simulations for gas flows in microgeometries using the direct simulation Monte Carlo method. Int. J. Heat Fluid Flow, 25(6): 975-985, 2004M. Wang *, Z. Li. Nonideal gas flow and heat transfer in micro- and nanochannels using the direct simulation Monte Carlo method. Physical Review E. 68: 046704, 2003微纳热量输运机理(selected 5)X. Shan and M. Wang*. Understanding of thermal conductance of thin gas layer. Advances of Mechanical Engineering 2013: 692842, 2013M. Wang*, X. Shan, N. Yang. Understanding length dependence of effective thermal conductivity of nanowire. Physics Letter A. 376: 3514-3517, 2012M. Wang*, N. Yang and Z. Guo. Non-Fourier heat conductions in nanomaterials. Journal of Applied Physics, 110: 064310, 2011M. Wang*, and Z. Guo. Understanding of size and temperature dependences of effective thermal conductivity of nanotubes. Physics Letter A 374: 4312-4315 2010M. Wang, B. Cao, and Z. Guo*. General Heat Conduction Equation Based on Thermomass Theory. Frontiers in Heat and Mass Transfer 1: 013005, 2010.节能及热力学优化(selected 5)X. Shan, M. Wang* and Z. Guo. Geometry optimization of self-similar transport network. Mathematical Problems in Engineering. 2011: 421526, 2011X. Liu, Q. Chen*, M. Wang* et al. Multi-dimensional effects on optimal network structure for liquid distributors. Chemical Engineering and Processing 49(10): 1038-1043, 2010Q. Chen, M. Wang*, N. Pan, and Z. Guo. Optimization principles for convective heat transfer enhancement. Energy. 34(9): 1199-1206, 2009Q. Chen, M. Wang*, N. Pan, and Z. Guo. Optimization Principle for Varying Viscosity Fluid Flow and Its Application to Heavy Oil Flow Drag Reduction. Energy and Fuels. 23, 4470–4478, 2009格子Boltzmann算法(selected 5)Y. Chen, Q. Cai, Z. Xia, M. Wang* and S. Chen. On the momentum exchange method in lattice Boltzmann simulations of particle-fluid interactions. Physical Review E. 88: 013303, 2013M. Wang*, and Q. Kang. Modeling electrokinetic flows in microchannels using coupled lattice Boltzmann methods. Journal of Computational Physics, 229: 728-744, 2010J. Wang, M. Wang*, and Z. Li. Lattice Evolution Solution for the Nonlinear Poisson-Boltzmann Equation in Confined Domains. Communications of Nonlinear Sciences and Numerical Simulation. 13(3): 575-583, 2008J. Wang, M. Wang, and Z. Li*. A Lattice Boltzmann Algorithm for Fluid-Solid Conjugate Heat Transfer. Inter. J. Thermal Sci. 46(3) 228-234, 2007J. Wang, M. Wang*, and Z. Li. Lattice Poisson-Boltzmann Simulations of Electro-osmotic Flows in Microchannels. Journal of Colloid and Interface Science. 296(2): 729-736, 2006